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May 3, 20260 citationsOpen Access

Cyclic-Like Cosmology from Persistent Uncertainty: A Constraint-Driven Alternative to Assumed Global Cyclicity

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IPItay Priiz

Key Points

  • The aim is to explore cycle-like cosmological behavior resulting from the Persistent Uncertainty Law and physical description constraints.
  • Examined the implications of persistent uncertainty and the Iron Laws on cosmological structures.
  • Analyzed how admissibility constraints influence the emergence of phase turnover and low-record regimes.
  • Persistent uncertainty prevents the universe from reaching final equilibrium or closure.
  • Continual phase turnover and structural reorganization occur without a global aeon sequence.

Abstract

This note presents a cyclic-like cosmological consequence of the Persistent Uncertainty Law and the Iron Laws of admissible physical description. The aim is not to reproduce or derive Penrose’s Conformal Cyclic Cosmology (CCC), but to show a narrower result: persistent uncertainty, the impossibility of final equilibrium, finite horizons, and irreversible record accumulation naturally generate continual phase turnover and the regeneration of low-record regimes. In this framework, cycle-like behavior is not assumed as a global geometric structure, but emerges as a consequence of admissibility constraints. The universe remains dynamically open, never reaches final closure, and continually reorganizes its structure without requiring a global aeon sequence.

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Cite This Study

Itay Priiz (2026) studied this question.

synapsesocial.com/papers/69f6e6968071d4f1bdfc754ehttps://doi.org/10.5281/zenodo.19956647
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